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首页> 外文期刊>AIP Advances >Enhancing mechanical properties of NbZrMo alloy by maximizing configurational entropy from first-principles calculations
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Enhancing mechanical properties of NbZrMo alloy by maximizing configurational entropy from first-principles calculations

机译:通过从第一原理计算中最大化配置熵,增强Nbzrmo合金的机械性能

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摘要

High entropy alloys have been widely studied due to their unique physical properties compared to pure metals or conventional alloys with a single principal metallic component. We use ab initio calculations as the most prominent approach to investigate physical properties of materials to study mechanical properties of random ternary alloys NbZrMo. The equation of state and energy–stress relations are fitted to the ground-state energies from density functional theory calculations on structures with randomly arranged atoms on the crystallographic positions of the simple lattices. Among a couple of factors that determine the entropy of structure we consider the configuration that has the main effect on entropy at low temperatures. Several mechanical parameters and moduli are evaluated, and their dependence on the alloy composition is studied. We show that the alloy with the highest configuration entropy possesses the largest Young’s and bulk modulus values. The enhancement of other mechanical properties is also observed.
机译:与具有单个主要金属组分的纯金属或常规合金相比,其具有独特的物理性质,高熵合金已被广泛研究。我们使用AB Initio计算作为研究材料的物理性质的最突出的方法,以研究随机三元合金NBZRMO的机械性能。状态和能量应力关系的方程拟合到来自密度泛函理论计算的地面能量,在简单格子的晶格位置上随机排列的原子进行随机排列的原子。在确定结构熵的几个因素中,我们考虑在低温下对熵产生主要影响的配置。评估了几种机械参数和模量,研究了它们对合金组合物的依赖性。我们表明,具有最高配置熵的合金具有最大的杨氏和散装模量值。还观察到其他机械性能的增强。

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